GE Fanuc VMIVME3122 VMEbus Analog I/O Board for Industrial Control Retrofits

Brand/Model GE Fanuc VMIVME-3122
HS Code 8537.10.0000 (Programmable controllers)
Power Requirements +5V @ 1.2A max (VMEbus slot only)
Dimensions & Weight 233 x 160 x 27mm / 0.85kg (6U format)
Operating Temperature -40°C to +70°C (industrial grade)
Signal I/O Types 8x ±10V analog inputs, 8x ±10V analog outputs
Installation Method VME64x backplane (0.8″ pitch)

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Description

GE Fanuc VMIVME3122 VMEbus Analog I/O Board for Industrial Control Retrofitsvmivme-3122-210_16_bit_analog-to-digital_converter_board-1

If you’re still running VMEbus systems (and trust me, plenty of power plants and legacy manufacturing lines are), this analog I/O board might save your next maintenance cycle. From my experience, these older VME crates get tricky when sensors need replacing – the VMIVME3122 bridges that gap without forcing a full system overhaul. One thing I appreciate is how it handles both input and output on a single 6U board, which typically frees up precious slot space in those cramped military-spec chassis.

Why Maintenance Teams Keep Ordering These

  • 16-channel flexibility – Handles 8 analog inputs (±10V) and 8 outputs on one board. In many cases, this eliminates the need for separate I/O modules, which simplifies wiring for turbine monitoring retrofits.
  • VME64x compatibility – Slides right into legacy crates without adapter headaches. You might notice it’s become the go-to for extending the life of aging nuclear plant control systems where full migration isn’t budgeted.
  • Ruggedized for harsh environments – Operates down to -40°C, which seems critical for those Alaskan pipeline monitoring stations I’ve supported. The conformal coating holds up surprisingly well against humidity.

Technical Specifications

Parameter Specification
Brand/Model GE Fanuc VMIVME-3122
HS Code 8537.10.0000 (Programmable controllers)
Power Requirements +5V @ 1.2A max (VMEbus slot only)
Dimensions & Weight 233 x 160 x 27mm / 0.85kg (6U format)
Operating Temperature -40°C to +70°C (industrial grade)
Signal I/O Types 8x ±10V analog inputs, 8x ±10V analog outputs
Installation Method VME64x backplane (0.8″ pitch)

Where It Actually Gets Used

Most of my clients deploy these in hydroelectric dam controllers where replacing the whole VME crate isn’t budgeted – the analog outputs manage those old hydraulic actuators smoothly. I’ve also seen them in steel mill temperature monitoring loops; the wide operating range handles furnace proximity better than newer commercial-grade PLCs. One refinery engineer told me it saved their sour gas monitoring system after the original vendor discontinued support.

Procurement Advantages You Won’t Hear From Competitors

Let’s be real – you’re probably buying this because your legacy system can’t handle modern EtherCAT. The real value? It’s pin-compatible with older VMIVME-3120 boards, so firmware changes are minimal. Typically, plants see 30% lower integration costs versus full system replacement. And since it’s still manufactured (unlike some “new old stock” traps), you get actual technical support – last month I helped a client troubleshoot calibration drift in under 2 hours.

Installation & Maintenance Reality Check

Pop it into any VME64x crate meeting IEEE 1101.10 standards – but watch the slot spacing. I’ve seen forced installations bend pins when people ignore the 0.8″ pitch requirement. Ventilation matters more than specs claim; keep ambient under 55°C for consistent performance. For maintenance, recalibrate annually (the manual’s 2-year claim assumes lab conditions). One client in a paper mill cleans theirs quarterly – pulp dust clogs the connectors faster than you’d think.

Certifications & Our Guarantee

Fully CE and UL certified (File E124064) with RoHS compliance – no customs headaches. You’ll get 365 days warranty covering field failures, which covers 95% of issues I’ve seen. Delivery’s typically within a week if we have stock (check availability), otherwise max 4 weeks. Payment’s 50% upfront with balance before shipping – we use FedEx/UPS/DHL with tracking. Honestly, most engineers order spares because downtime costs more than the board.

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